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随着观测能力的不断提高,太阳上无时无刻不在发生的微观爆发现象越来越成为科学家竞相追逐的热点问题。因为这些微爆发与困扰太阳物理界的日冕加热、高能粒子辐射、太阳风起源等重大科学问题密切相关,他们包括纳耀斑、微暗条爆发、日冕喷流以及最近引起热议的"营火"(campfires)现象等微小太阳爆发。最近由“帕克太阳探测器”(Parker Solar Probe, PSP)在靠近太阳的位置捕捉到了微小太阳高能...
In the threatening trouble of climate change, growing commercial crops on solar farms is a potentially efficient use of agricultural land that can both increase commercial food production and improve ...
MIT engineers have developed ultralight fabric solar cells that can quickly and easily turn any surface into a power source.
Students are using polyurethane, resin, epoxy – and gallons of wit – to give new life to cracked, broken and nonworking solar panels.
In a single day, enough sunlight strikes Earth to power the world for an entire year—that is, if we can find a way to capture that energy cheaply and efficiently. While the cost of solar energy has de...
Perovskites hold promise for creating solar panels that could be easily deposited onto most surfaces, including flexible and textured ones. These materials would also be lightweight, cheap to produce,...
2022年7月8日,中科院合肥研究院固体物理研究所太阳电池团队的英文专著 DYE-SENSITIZED SOLAR CELLS (染料敏化太阳电池)正式出版,该书由德国德古意特出版社和中国科学出版社共同出版,面向全球发行。
Perovskites are a family of materials that are currently the leading contender to potentially replace today’s silicon-based solar photovoltaics. They hold the promise of panels that are far thinner an...
Solar power is expected to reach 10 percent of global power generation by the year 2030, and much of that is likely to be located in desert areas, where sunlight is abundant. But the accumulation of d...
An estimated two-thirds of humanity is affected by shortages of water, and many such areas in the developing world also face a lack of dependable electricity.
In the ongoing race to develop ever-better materials and configurations for solar cells, there are many variables that can be adjusted to try to improve performance, including material type, thickness...
A Cornell-led collaboration received a $3 million grant from the U.S. Department of Energy to use machine learning to accelerate the creation of low-cost materials for solar energy.
Tossing worn-out solar panels into landfills may soon become electronics waste history.
近日,中国地质大学环境学院顾延生教授团队在杂志《Journal of Hydrology》上发表题为《全新世泥炭地水分调节响应了太阳活动的千年周期:来自植硅体记录》(Holocence peatland water regulation response to ~1000-year solar cycle indicated by phytoliths in central China)的学术论文...
A team of National Science Foundation-supported researchers at Northern Illinois University and the U.S. Department of Energy's National Renewable Energy Laboratory in Golden, Colorado, report in the ...

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